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264 results for “systematic status”
FIGURE 11. Olisthella alma n. gen., n in Resolving the status of Pyriporoides and Daisyella (Bryozoa: Cheilostomata), with the systematics of some additional taxa of Calloporoidea having an ooecial heterozooid
FIGURE 11. Olisthella alma n. gen., n. sp., A C, holotype, NIWA 98229; B, E, F, paratype, NIWA 98230; D, unregistered, on same substratum as paratype: A, zooids, one with an ooecium; B, zooids with well-preserved cryptocystal shelves; C, ooecium of zooid illustrated in A; D, zooid in profile; E, reparative kenozooid functioning as an opesial closure; F, complete autozooid with opesia occluded by reparative kenozooid. Scalebars: A, 500 µm; B, 200 µm; C, D, F, 100 µm; E, 50 µm.
FIGURE 8. Olisthella plana n. gen., n in Resolving the status of Pyriporoides and Daisyella (Bryozoa: Cheilostomata), with the systematics of some additional taxa of Calloporoidea having an ooecial heterozooid
FIGURE 8. Olisthella plana n. gen., n. sp., holotype, NIWA 95617: A, part of colony with autozooids and ovicellate zooid (arrows indicate tiny spine-bases on lateral gymnocysts); note the distal exposure of the ooecial kenozooid, with an extensive cryptocystal area. Pyriporoides murdochi n. sp. B–D, holotype, NIWA 136; E, unregistered: B, ovicellate zooid (note the spined ooecial kenozooid and the paired distal spines on the lateral gymnocyst of the maternal zooid); C, autozooids, showing short caudae; D, disposition of autozooidal spines; E, ancestrula. Scalebars: A, 500 µm. B–D, 200 µm; E, 100 µm.
FIGURE 9. Olisthella occlusa n. gen., n in Resolving the status of Pyriporoides and Daisyella (Bryozoa: Cheilostomata), with the systematics of some additional taxa of Calloporoidea having an ooecial heterozooid
FIGURE 9. Olisthella occlusa n. gen., n. sp., holotype, AU.J62: A, Autozooids and interzooidal kenozooids; B, Autozooids with kenozooidal closures; C, ovicellate zooid (note tiny spine-bases on lateral gymnocysts in A–C); D, E, ooecia, tilted distad to show the proximally facing endooecial openings. Scalebars: A–C, 200 µm; D, E, 100 µm.
FIGURE 7. Pyriporoides aviculata n in Resolving the status of Pyriporoides and Daisyella (Bryozoa: Cheilostomata), with the systematics of some additional taxa of Calloporoidea having an ooecial heterozooid
FIGURE 7. Pyriporoides aviculata n. sp. A–D, F, G, holotype, NIWA 98178; E, paratype, NIWA 98179: A, colony with ancestrula (an), interzooidal avicularium (av) and other zooids including one that is ovicellate; B, laterally budded interzooidal avicularium; C, ovicellate zooid with associated avicularian heterozooid; D, E, zooids with and without spines, respectively showing spine disposition and the opesia and cryptocyst; F, ancestrula, the closure plate with a tiny hooded pore; G, proximal zooid budded from ancestrula, with kenozooidal closure. Scalebars: A, 1 mm; B, D, E, G, 100; C, F, 200 µm.
Fig. 3 in Contributions on Gargaphia (Heteroptera, Tingidae) systematics: redescriptions of two South American species with considerations on the status of G. inca
Fig. 3. Distribution of Gargaphia opima Drake, 1931 and G. inca Monte, 1943. Circles indicate new distribution records.
Fig. 6, 7 in Contributions on Gargaphia (Heteroptera, Tingidae) systematics: redescriptions of two South American species with considerations on the status of G. inca
Fig. 6, 7. Rostrum channel: 6, Gargaphia opima Drake, 1931; 7, Gargaphia inca Monte, 1943. Scale bar: 0.25 mm.
Figs 1, 2 in Contributions on Gargaphia (Heteroptera, Tingidae) systematics: redescriptions of two South American species with considerations on the status of G. inca
Figs 1, 2. Dorsal habitus of Gargaphia opima Drake, 1931 and G. inca Monte, 1943: 1, G. opima; 2, G. inca. Scale bar: 0.5 mm.
Figs 4, 5 in Contributions on Gargaphia (Heteroptera, Tingidae) systematics: redescriptions of two South American species with considerations on the status of G. inca
Figs 4, 5. Lateral view: 3, Gargaphia opima Drake, 1931; 4, Gargaphia inca Monte, 1943. ScaLe bar: 0.25 mm (modified from MONTE, 1947).
FIGURE 5 in On the systematic status of Isopericlimenaeus Marin, 2012 and its type species, Periclimenaeus gorgonidarum (Balss, 1913) (Crustacea: Decapoda Palaemonidae)
FIGURE 5. Periclimenaeus gorgonidarum (Balss, 1913), ovigerous female (MADBK 120519_013) from Green Island, Taiwan: A, Carapace and frontal region, dorsal (left eye, antennule, and antenna removed); B, same, lateral; C, left posterolateral angle of sixth abdominal somite and frontal telson, dorsal; D, telson and uropod, dorsal; E, posterior margin of telson; F, first pereiopod, lateral; G, third pereiopod, lateral; H, same, dactylus, mesial; I, fourth pereiopod, lateral; J, fifth pereiopod, lateral.
FIGURE 6 in On the systematic status of Isopericlimenaeus Marin, 2012 and its type species, Periclimenaeus gorgonidarum (Balss, 1913) (Crustacea: Decapoda Palaemonidae)
FIGURE 6. Periclimenaeus gorgonidarum (Balss, 1913), ovigerous female (MADBK 120519_013) from Green Island, Taiwan: A, major second pereiopod, lateral; B, same, fingers, mesial; C, minor second pereiopod, lateral; D, same, fingers, lateral.
FIGURE 4 in On the systematic status of Isopericlimenaeus Marin, 2012 and its type species, Periclimenaeus gorgonidarum (Balss, 1913) (Crustacea: Decapoda Palaemonidae)
FIGURE 4. Periclimenaeus gorgonidarum (Balss, 1913), male (MADBK 120519_019) from Jejudo Island, Korea: A, major second pereiopod, lateral; B, minor second pereiopod, lateral; C, fingers of major second pereiopod, mesial; D, fingers of minor second pereiopod, mesial E, first pereiopod, lateral; F, third pereiopod, lateral G, same, dactylus, mesial; H, fourth pereiopod, lateral; I, fifth pereiopod, lateral.
FIGURE 2 in On the systematic status of Isopericlimenaeus Marin, 2012 and its type species, Periclimenaeus gorgonidarum (Balss, 1913) (Crustacea: Decapoda Palaemonidae)
FIGURE 2. Periclimenaeus gorgonidarum (Balss, 1913) from Callyspongia cf. confoederata (sensu Ridley, 1884). Male (MADBK 120519_019, pocl 4.2 mm) from Jejudo Island, Korea (photograph by JH Park).
FIGURE 3 in On the systematic status of Isopericlimenaeus Marin, 2012 and its type species, Periclimenaeus gorgonidarum (Balss, 1913) (Crustacea: Decapoda Palaemonidae)
FIGURE 3. Periclimenaeus gorgonidarum (Balss, 1913), male (MADBK 120519_019) from Jejudo Island, Korea: A, Carapace and frontal region, lateral; B, inferior orbital angle, dorsal; C, telson, dorsal; D, eye, dorsal; E, antennule, ventral; F, antenna, ventral; G, third maxilliped, ventral; H, outer margin of uropodal exopod, dorsal; I, proximal spiniform seta, telson, ventral.
FIGURE 1 in On the systematic status of Isopericlimenaeus Marin, 2012 and its type species, Periclimenaeus gorgonidarum (Balss, 1913) (Crustacea: Decapoda Palaemonidae)
FIGURE 1. Phylogenetic tree of Periclimenaeus gorgonidarum and related associated palaemonoid species revealed by Bayesian Inference (BI) and Maximum Likelihood (ML) analysis of 16S rRNA sequences. Bayesian (BI) posterior probabilities and Maximum Likelihood (ML) bootstrap support expressed in the order BI/ML (<50% not shown).
FIGURES 10–15 in On revised systematic status of Mycalesis suaveolens kagina Fruhstorfer, 1911, with notes on its immature biology and hostplant associations
FIGURES 10–15. Immatures of Mycalesis kagina. 10. Eggs attached on leaf underside of Zingiber kawagoii. 11. Enlargement of egg (head capsule visible), scale bar = 0.5 mm. 12. 1st instar larva. 13. 3rd instar larva. 14. 5th larva. 15. pupa.
FIGURES 32–35 in On revised systematic status of Mycalesis suaveolens kagina Fruhstorfer, 1911, with notes on its immature biology and hostplant associations
FIGURES 32–35. Genitalia of Mycalesis kagina and M. suaveolens. 32. Male genitalia of Mycalesis kagina, 33. Male genitalia of M. suaveolens. 34. Female genitalia of M. kagina, 35. Female genitalia of M. suaveolens. Scale bar = 1 mm.
FIGURES 2–9. Adults specimens. 2–5 in On revised systematic status of Mycalesis suaveolens kagina Fruhstorfer, 1911, with notes on its immature biology and hostplant associations
FIGURES 2–9. Adults specimens. 2–5, those of Mycalesis suaveolens, 2. male, upperside (Yunnan), 3. male, underside (Yunnan), 4. female, upperside (Yunnan), 5. female, underside (Yunnan). 6–9, those of Mycalesis kagina, 6. male, upperside (Taiwan), 7. male, underside (Taiwan), 8. female, upperside (Taiwan), 9. female, underside (Taiwan). Scale bar = 1 cm.
FIGURES 27–31 in On revised systematic status of Mycalesis suaveolens kagina Fruhstorfer, 1911, with notes on its immature biology and hostplant associations
FIGURES 27–31. Head capsules of Mycalysis suaveolens. 27. 1st instar. 28. 2nd instar. 29. 3rd instar. 30. 4th instar. 31. 5th instar. Scale bar = 1 mm.
FIGURES 22–26 in On revised systematic status of Mycalesis suaveolens kagina Fruhstorfer, 1911, with notes on its immature biology and hostplant associations
FIGURES 22–26. Head capsules of Mycalysis kagina. 22. 1st instar. 23. 2nd instar. 24. 3rd instar. 25. 4th instar. 26. 5th instar. Scale bar = 1 mm.
FIGURE 7 in On the systematic status of Isopericlimenaeus Marin, 2012 and its type species, Periclimenaeus gorgonidarum (Balss, 1913) (Crustacea: Decapoda Palaemonidae)
FIGURE 7. Two sponge-dwelling species and host sponge from Jejudo Island, Korea: A, female of Periclimenaeus gorgonidarum (SNU KR JH131, pocl 3.5 mm) in the spongocoel of host species (photograph by JH Park); B, ovigerous female of Onycocaris callyspongiae (SNU KR JH454) inside a channel of the sponge wall of same host species (photograph by JH Park); C, Host species, C. cf. confoederata (photograph by JH Park).
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.